VI-BWP-EV Allicdata Electronics
Allicdata Part #:

VI-BWP-EV-ND

Manufacturer Part#:

VI-BWP-EV

Price: $ 105.69
Product Category:

Power Supplies - Board Mount

Manufacturer: Vicor Corporation
Short Description: DC DC CONVERTER 13.8V 150W
More Detail: Isolated Module DC DC Converter 1 Output 13.8V ...
DataSheet: VI-BWP-EV datasheetVI-BWP-EV Datasheet/PDF
Quantity: 1000
1 +: $ 96.07500
Stock 1000Can Ship Immediately
$ 105.69
Specifications
Current - Output (Max): 10.87A
Size / Dimension: 4.60" L x 2.40" W x 0.50" H (116.8mm x 61.0mm x 12.7mm)
Package / Case: Full Brick
Mounting Type: Through Hole
Efficiency: 88%
Operating Temperature: -10°C ~ 85°C
Features: OCP, OTP, OVP, SCP
Applications: ITE (Commercial)
Voltage - Isolation: 3kV
Power (Watts): 150W
Series: VI-200™
Voltage - Output 3: --
Voltage - Output 2: --
Voltage - Output 1: 13.8V
Voltage - Input (Max): 36V
Voltage - Input (Min): 18V
Number of Outputs: 1
Type: Isolated Module
Part Status: Active
Packaging: Bulk 
Description

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DC DC Converters

DC-DC converters are electronic power conversion devices that convert a source of direct current (DC) from one voltage level to another. The primary function of a DC-DC converter is to take a unregulated DC input voltage and create a regulated output voltage. There are two main types of DC-DC converters, 10v to 5v providing a high power of output and VI-BWP-EV providing a low power of output. In this article, we will focus on the application field and work principle of the VI-BWP-EV DC-DC converters.

Application Field

VI-BWP-EV DC-DC converters are particularly suitable for applications in which a low power source is required. VI-BWP-EV converters are commonly used in a variety of sensitive electronic or electrical applications, such as in the automotive industry, home appliance industry, communication network communication system etc. Also, they are widely used to power down electric vehicle (EV) batteries.

Working Principle

VI-BWP-EV DC-DC converters use a voltage-mode converter (VMC) topology to regulate the output voltage. This is done by using a series of inductors, capacitors, and resistors to create a feedback loop which adjusts the supplied voltage. The input voltage is transformed using the VMC topology, with a feedback signal being sent to the input side to adjust the output voltage. This signal is then monitored and rectified by a control circuit. The output is regulated by manipulating the input voltage to the VMC topology and thus, its output voltage.

Advantages

VI-BWP-EV DC-DC converters have the advantages of low output power, fast switching speed, high efficiency, and small size. In addition, they are free from noise and ripple issues and can operate in both step down and boost configurations. Furthermore, the VI-BWP-EV converter is well suited for applications where high accuracy and repeatability is required.

Conclusion

VI-BWP-EV DC-DC converters are becoming more widely used for a variety of applications due to their low power output, fast switching speed, high efficiency, and small size. There are also many advantages to using VI-BWP-EV DC-DC converters, such as the fact that they are free from noise and ripple issues and can operate in both step down and boost configurations. Furthermore, they are well suited for applications where high accuracy and repeatability is required.

The specific data is subject to PDF, and the above content is for reference

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